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MRS Bulletin, 1995
Various methods are used in functionally gradient materials technology to control the composition and structure of a composite.The chemical vapor deposition (CVD) method yields a deposit with source gases by applying variou s forms of energy (heat, light, plasma, etc.) to the gases after they are introduced into a CVD reactor.
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Various methods are used in functionally gradient materials technology to control the composition and structure of a composite.The chemical vapor deposition (CVD) method yields a deposit with source gases by applying variou s forms of energy (heat, light, plasma, etc.) to the gases after they are introduced into a CVD reactor.
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Biomaterials by CVD Methods, Introduction to the CVD Special Section
Chemical Vapor Deposition, 2010CVD processing is a cornerstone of manufacturing for semiconductor products, optics, sensors, and displays. It is also established for surface modification of products like cutting tools and windows. Industrial CVD processes are not just hatched, they are conceived, born, weaned, nurtured through their testy adolescence, and finally brought to maturity
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In T1DM without CVD, the LIFE-T1D model predicted lifetime risk for CVD and non-CVD mortality
Annals of Internal MedicineHelmink MAG, Hageman SHJ, Eliasson B, et al. Lifetime and 10-year cardiovascular risk prediction in individuals with type 1 diabetes: the LIFE-T1D model. Diabetes Obes Metab. 2024;26:2229-2238. 38456579.
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A review of graphene synthesisatlow temperatures by CVD methods
New Carbon Materials, 2020Zhuang Ren +2 more
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2013
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?????????????????????? ?????????????????????????????????? ?????????????????? ?? ?????????????????????? ???????????????????????? ????????????-???????????????????????? ?????????????????? ?????????? ?? ?????????????????? ?? ???????????????????? ?????????????? CDV ???????????????????? ????????????. ???????????????? ?????????????????????? ???????????????? ??
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Tuning Optical Conductivity of Large‐Scale CVD Graphene by Strain Engineering
Advanced Materials, 2014Wei Ji, Chee-Tat Toh, Jong-Hyun Ahn
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